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MULTI-RESPONSE OPTIMIZATION OF WEDM PROCESS PARAMETERS USING TAGUCHI BASED DESIRABILITY FUNCTION ANALYSIS

机译:基于Taguchi的期望函数分析,多响应优化WEDM工艺参数

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Shape memory alloy has a unique capability to return to its original shape after physical deformation by applying heat or thermo-mechanical or magnetic load. In this experimental investigation, desirability function analysis (DFA), a multi-attribute decision making was utilized to find out the optimum input parameter setting during wire electrical discharge machining (WEDM) of Ni-Ti shape memory alloy. Four critical machining parameters, namely pulse on time (T_(ON)), pulse off time (T_(OFF)), wire feed (WF) and wire tension (WT) were taken as machining inputs for the experiments to optimize three interconnected responses like cutting speed, kerf width, and surface roughness. Input parameter combination T_(ON)= 120 us., T_(OFF)= 55 us., WF= 3 m/min. and WT= 8 kg-F were found to produce me optimum results. The optimum process parameters for each desired response were also attained using Taguchi's signal-to-noise ratio. Confirmation test has been done to validate the optimum machining parameter combination which affirmed DFA was a competent approach to select optimum input parameters for the ideal response quality for WEDM of Ni-Ti shape memory alloy.
机译:形状记忆合金具有独特的能力,通过施加热量或热机械或磁力负荷,物理变形后返回其原始形状。在该实验研究中,利用期望函数分析(DFA),利用多属性决策,以了解Ni-Ti形状记忆合金的线电放电加工(WEDM)期间的最佳输入参数设置。四个关键加工参数,即脉冲接通时间(T_(开)),脉冲关闭时间(T_(关闭)),送稿(WF)和线张力(WT)作为实验的加工输入,以优化三个互连的响应类似于切割速度,kerf宽度和表面粗糙度。输入参数组合T_(ON)= 120 US。,T_(OFF)= 55 US。,WF = 3米/分钟。并发现wt = 8 kg-f产生最佳结果。使用Taguchi的信噪比也获得了每个所需响应的最佳过程参数。已经进行了确认测试以验证肯定DFA的最佳加工参数组合是选择用于Ni-Ti形状记忆合金的WEDM的理想响应质量的最佳输入参数的能力方法。

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